通过挤压工艺制作生物启发碳纳米点-玉米淀粉纳米复合膜,用于可持续活性食品包装应用

IF 10.7 1区 化学 Q1 CHEMISTRY, APPLIED Carbohydrate Polymers Pub Date : 2024-07-19 DOI:10.1016/j.carbpol.2024.122502
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引用次数: 0

摘要

本研究制备了碳纳米点(CD)-玉米淀粉(CS)纳米复合薄膜,用于活性食品包装应用。首先,使用银杏叶(GBL)作为生物质源碳前体,并采用简便的水热法合成环境可持续的碳纳米管。然后对 GBL 衍生的碳纳米点(gCDs)进行了表征,并通过挤压工艺将其纳入 CS 基质,从而制造出 CS/gCD 纳米复合薄膜。系统研究了不同浓度的 gCD 对 CS/gCD 复合薄膜的物理化学和功能特性的影响。当 gCD 暴露于 1000 μg/mL 以下时,对人结肠直肠腺癌细胞系(Caco-2)细胞无细胞毒性作用。在 CS 薄膜中加入 gCD 改善了其机械性能,与 CS 薄膜相比,CS/gCD2% 纳米复合薄膜的韧性提高了 198%。此外,氧气阻隔性和紫外线阻隔性也得到了显著改善。此外,由于 gCD 具有优异的抗氧化活性,CS/gCD 纳米复合薄膜大大延长了 ω-3 油的保质期,在 15 天的储存期内仅表现出 9 meq/kg 的抗氧化活性。我们的研究结果表明,所开发的 CS/gCD 活性复合膜有望成为提高食品保质期和减少食品浪费的环境可持续解决方案的候选材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Fabrication of bio-inspired carbon nanodot-corn starch nanocomposite films via extrusion process for sustainable active food packaging applications

In this study, carbon nanodot (CD)-corn starch (CS) nanocomposite films are fabricated for active food packaging applications. First, ginkgo biloba leaves (GBL) were used as a biomass-derived carbon precursor, and a facile hydrothermal method was employed to synthesise environmentally sustainable CDs. The GBL-derived carbon nanodots (gCDs) were then characterised and incorporated into a CS matrix via an extrusion process to fabricate the CS/gCD nanocomposite film. The effects of various gCD concentrations on the physicochemical and functional properties of CS/gCD composite films were systematically investigated. The gCD exhibited non-cytotoxic effect against human colorectal adenocarcinoma cell line (Caco-2) cells when exposed up to 1000 μg/mL. The incorporation of gCDs into the CS film improved its mechanical properties, with the toughness of the CS/gCD2% nanocomposite film exhibiting 198 % superiority compared to the CS film. In addition, the oxygen barrier and UV-blocking properties were significantly improved. Furthermore, the CS/gCD nanocomposite film significantly extended the shelf life of ω-3 oils owing to the superior antioxidant activity of the gCDs, exhibiting only 9 meq/kg during the 15-day storage period. Our results suggest that the developed CS/gCD active composite film is a promising candidate for environmentally sustainable solutions to enhance food shelf life and reduce food waste.

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来源期刊
Carbohydrate Polymers
Carbohydrate Polymers 化学-高分子科学
CiteScore
22.40
自引率
8.00%
发文量
1286
审稿时长
47 days
期刊介绍: Carbohydrate Polymers stands as a prominent journal in the glycoscience field, dedicated to exploring and harnessing the potential of polysaccharides with applications spanning bioenergy, bioplastics, biomaterials, biorefining, chemistry, drug delivery, food, health, nanotechnology, packaging, paper, pharmaceuticals, medicine, oil recovery, textiles, tissue engineering, wood, and various aspects of glycoscience. The journal emphasizes the central role of well-characterized carbohydrate polymers, highlighting their significance as the primary focus rather than a peripheral topic. Each paper must prominently feature at least one named carbohydrate polymer, evident in both citation and title, with a commitment to innovative research that advances scientific knowledge.
期刊最新文献
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